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How autoreactive thymocytes differentiate into regulatory versus effector CD4 T cells after avoiding clonal deletion. | LitMetric

AI Article Synopsis

  • Thymocytes, which are special immune cells, can either get destroyed or change into two types of helper T cells based on strong signals they receive.
  • The study shows that how these thymocytes choose what to become happens at different times during their development.
  • If the signals are strong for a long time, the cells become one type of T cell, but if the signals are disrupted, they can turn into a different type called regulatory T cells.

Article Abstract

Thymocytes bearing autoreactive T cell receptors (TCRs) are agonist-signaled by TCR/co-stimulatory molecules to either undergo clonal deletion or to differentiate into specialized regulatory T (T) or effector T (T) CD4 cells. How these different fates are achieved during development remains poorly understood. We now document that deletion and differentiation are agonist-signaled at different times during thymic selection and that T and T cells both arise after clonal deletion as alternative lineage fates of agonist-signaled CD4CD25 precursors. Disruption of agonist signaling induces CD4CD25 precursors to initiate Foxp3 expression and become T cells, whereas persistent agonist signaling induces CD4CD25 precursors to become IL-2 T cells. Notably, we discovered that transforming growth factor-β induces Foxp3 expression and promotes T cell development by disrupting weaker agonist signals and that Foxp3 expression is not induced by IL-2 except under non-physiological in vivo conditions. Thus, TCR signaling disruption versus persistence is a general mechanism of lineage fate determination in the thymus that directs development of agonist-signaled autoreactive thymocytes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10063450PMC
http://dx.doi.org/10.1038/s41590-023-01469-2DOI Listing

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